Comparative quantum and semi-classical analysis of Atom-Field Systems II: Chaos and regularity
arXiv:1312.2672 · doi:10.1103/PhysRevA.89.032102
Abstract
The non-integrable Dicke model and its integrable approximation, the Tavis-Cummings (TC) model, are studied as functions of both the coupling constant and the excitation energy. The present contribution extends the analysis presented in the previous paper by focusing on the statistical properties of the quantum fluctuations in the energy spectrum and their relation with the excited state quantum phase transitions (ESQPT). These properties are compared with the dynamics observed in the semi-classical versions of the models. The presence of chaos for different energies and coupling constants is exhibited, employing Poincaré sections and Peres lattices in the classical and quantum versions, respectively. A clear correspondence between the classical and quantum result is found for systems containing between to atoms. A measure of the Wigner character of the energy spectrum for different couplings and energy intervals is also presented employing the statistical Anderson-Darling test. It is found that in the Dicke Model, for any coupling, a low energy regime with regular states is always present. The richness of the onset of chaos is discussed both for finite quantum systems and for the semi-classical limit, which is exact when the number of atoms in the system tends to infinite.
References in corpus (4)
- Accurate numerical solution to the finite-size Dicke model
- Comparative quantum and semi-classical analysis of Atom-Field Systems I: density of states and excited-state quantum phase transitions
- Mathematical Methods in Quantum Optics: the Dicke Model
- Quantum chaos in the nuclear collective model: II. Peres lattices
Cited by in corpus (65)
- Quantum and Classical Lyapunov Exponents in Atom-Field Interaction Systems
- Positive quantum Lyapunov exponents in experimental systems with a regular classical limit
- Excited-state quantum phase transitions
- Comparative quantum and semi-classical analysis of Atom-Field Systems I: density of states and excited-state quantum phase transitions
- Polaritonic normal modes in Transition State Theory
- Excited-state quantum phase transitions in many-body systems with infinite-range interaction: Localization, dynamics, and bifurcation
- Classical chaos in atom-field systems
- Ubiquitous quantum scarring does not prevent ergodicity
- Dynamical signatures of quantum chaos and relaxation timescales in a spin-boson system
- Entropy, chaos and excited-state quantum phase transitions in the Dicke model
- Excited-state quantum phase transitions and periodic dynamics
- From thermal to excited-state quantum phase transitions ---the Dicke model
- Generalization of the Tavis-Cummings model for multi-level anharmonic systems: insights on the second excitation manifold
- Excited-state quantum phase transitions in systems with two degrees of freedom: III. Interacting boson systems
- Spectral kissing and its dynamical consequences in the squeeze-driven Kerr oscillator
- Delocalization and quantum chaos in atom-field systems
- Thermal and Quantum Phase Transitions in Atom-Field Systems: a Microcanonical Analysis
- Effects of excited state quantum phase transitions on system dynamics
- Constant of motion identifying excited-state quantum phases
- Approximated integrability of the Dicke model
- Quantum vs classical dynamics in a spin-boson system: manifestations of spectral correlations and scarring
- Dissipative Two-Mode Tavis-Cummings Model with Time-Delayed Feedback Control
- Chaos in the three-site Bose-Hubbard model -- classical vs quantum
- Chaos and Thermalization in the Spin-Boson Dicke Model
- Quantum phase transitions of atom-molecule Bose mixtures in a double-well potential
- Analytical description of the survival probability of coherent states in regular regimes
- Quantum Origin of Limit Cycles, Fixed Points, and Critical Slowing Down
- Adiabatic invariants for the regular region of the Dicke model
- Excited State Quantum Phase Transitions Studied from a Non-Hermitian Perspective
- Quantum scarring in a spin-boson system: fundamental families of periodic orbits
- Excited-state quantum phase transitions in a two-fluid Lipkin model
- Quantum localization measures in phase space
- Monodromy in Dicke superradiance
- Regularity and chaos in cavity QED
- Critical phenomena in an extended Dicke model
- Anharmonicity-induced excited-state quantum phase transition in the symmetric phase of the two-dimensional limit of the vibron model
- Experimental realization of the classical Dicke model
- Phase transitions of the Dicke model: a unified perspective
- Chaos in a deformed Dicke model
- Exact solvability, non-integrability, and genuine multipartite entanglement dynamics of the Dicke model
- Characterizing the excited-state quantum phase transition via the dynamical and statistical properties of the diagonal entropy
- Breakdown of the Quantum Distinction of Regular and Chaotic Classical Dynamics in Dissipative Systems
- Identification of quantum scars via phase-space localization measures
- Eigenstate thermalization scaling in approaching the classical limit
- Quantum signatures in quench from chaos to superradiance
- Mixed eigenstates in the Dicke model: Statistics and power-law decay of the relative proportion in the semiclassical limit
- Classical route to ergodicity and scarring in collective quantum systems
- Polaron-transformed dissipative Lipkin-Meshkov-Glick Model
- Quantum multifractality as a probe of phase space in the Dicke model
- Critical phenomena in light-matter systems with collective matter interactions
- Classical description of the parameter space geometry in the Dicke and Lipkin-Meshkov-Glick models
- Continuum analogues of excited-state quantum phase transitions
- Analysis of chaos and regularity in the open Dicke model
- Dispersive Regimes of the Dicke Model
- Two-photon statistics of nonclassical radiation in the dissipative finite-size Dicke model
- Effective dimensions of infinite-dimensional Hilbert spaces: A phase-space approach
- Transition to chaos in extended systems and their quantum impurity models
- Dynamics of Coherent States in Regular and Chaotic Regimes of the Non-integrable Dicke Model
- Quantum information scrambling in adiabatically-driven critical systems
- Loss of integrability in a system with two-photon interactions
- Experimental observation of phase transitions of a deformed Dicke model using a reconfigurable, bi-parametric electronic platform
- Comparison of the semiclassical and quantum optical field dynamics in a pulse-excited optical cavity with a finite number of quantum emitters
- Energy cat states induced by a parity-breaking excited-state quantum phase transition
- Superradiant Phase is a Finite Size Effect in Two-photon Processes
- Stabilization of product states and excited-state quantum phase transitions in a coupled qubit-field system